PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
August 1, 2003European Journal of Heart Failure175 citationsOpen Access

The Role of Cardiac Power and Systemic Vascular Resistance in the Pathophysiology and Diagnosis of Patients with Acute Congestive Heart Failure

View Full Paper
GCGad CotterYMYaron MoshkovitzEKEdo Kaluski

Structured PICO

Does the use of cardiac power index and systemic vascular resistance index improve the hemodynamic differentiation of acute congestive heart failure syndromes compared to conventional indexes?

P
Population
120 subjects, including 89 consecutive patients admitted for acute congestive heart failure (exacerbated systolic CHF n=56, hypertensive crisis n=5, pulmonary edema n=11, cardiogenic shock n=17) and 31 controls (septic shock n=11, healthy volunteers n=20).
I
Intervention
Measurement of cardiac power index (Cpi) and systemic vascular resistance index (SVRi) with two-dimensional graphic representation
C
Comparator
Conventional hemodynamic indexes (cardiac index and pulmonary capillary wedge pressure)
O
Outcome
Hemodynamic differentiation of acute CHF clinical syndromessurrogate

The combined use of cardiac power index and systemic vascular resistance index provides superior hemodynamic differentiation of acute heart failure phenotypes compared to conventional metrics like cardiac index and wedge pressure.

Abstract

OBJECTIVE: Conventional hemodynamic indexes (cardiac index (CI), and pulmonary capillary wedge pressure) are of limited value in the diagnosis and treatment of patients with acute congestive heart failure (CHF). PATIENTS AND METHODS: We measured CI, wedge pressure, right atrial pressure (RAP) and mean arterial blood pressure (MAP) in 89 consecutive patients admitted due to acute CHF (exacerbated systolic CHF, n=56; hypertensive crisis, n=5; pulmonary edema, n=11; and cardiogenic shock, n=17) and in two control groups. The two control groups were 11 patients with septic shock and 20 healthy volunteers. Systemic vascular resistance index (SVRi) was calculated as SVRi=(MAP-RAP)/CI. Cardiac contractility was estimated by the cardiac power index (Cpi), calculated as CIxMAP. RESULTS AND DISCUSSION: We found that CI12 mmHg are found consistently in patients with acute CHF. However, these measures often overlapped in patients with different acute CHF syndromes, while Cpi and SVRi permitted more accurate differentiation. Cpi was low in patients with exacerbated systolic CHF and extremely low in patients with cardiogenic shock, while SVRi was increased in patients with exacerbated systolic CHF and extremely high in patients with pulmonary edema. By using a two-dimensional presentation of Cpi vs. SVRi we found that these clinical syndromes can be accurately characterized hemodynamically. The paired measurements of each clinical group segregated into a specific region on the Cpi/SVRi diagnostic graph, that could be mathematically defined by a statistically significant line (Lambda=0.95). Therefore, measurement of SVRi and Cpi and their two-dimensional graphic representation enables accurate hemodynamic diagnosis and follow-up of individual patients with acute CHF.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Cotter et al. (2003) studied this question.

synapsesocial.com/papers/6a085b29113ba5b476de1b9dhttps://doi.org/10.1016/s1388-9842(03)00100-4
Ask AI
Helpful
Bookmark
Share
View Full Paper